Publication details

3D-printed device for time- and cost-efficient sample preparation and DNA fractionation

Authors

HRUŠKOVÁ Helena REMINEK Roman MINARIK Marek CHUNG Doo Soo FORET František

Year of publication 2025
Type Peer-reviewed scientific article
Magazine / Source TALANTA
MU Faculty or unit

Faculty of Science

Citation
web https://www.sciencedirect.com/science/article/pii/S0039914024018435
Doi https://doi.org/10.1016/j.talanta.2024.127461
Keywords Preparative gel electrophoresis; Circulating tumor DNA (ctDNA); Liquid biopsy; PCR; Cancer
Description Direct detection of DNA in complex biological samples bears several challenges regarding the selectivity and sensitivity of analyses. Therefore, DNA pre-extraction from bio-fluids is an emerging tool in biologically related fields. Specifically, a newly developing family of liquid biopsy techniques using PCR detection of circulating tumor DNA from blood serum or blood plasma could be significantly improved by harnessing fast and highthroughput DNA sample preparation. To address these needs, a 3D-printed device and a method based on gel electrophoresis combined with electrodialysis for the time-, cost- and labor-efficient preparative separation of DNA fragments from blood was developed. The proposed system also successfully eliminated large DNA fragments from the samples. Recovery for short DNA fragments was reaching up to 80 %. The method was tested on human genomic DNA and blood and blood serum spiked with DNA standards, and it significantly alleviated the signal of matrix DNA.

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